Suppr超能文献

近海到开阔大洋梯度中微藻种群的斑块分布和明显生态位分区。

Patchy Distributions and Distinct Niche Partitioning of Mycoplankton Populations across a Nearshore to Open Ocean Gradient.

机构信息

Center for Marine Environmental Ecology, School of Environmental Science and Engineering, Tianjin University, grid.33763.32Tianjin, China.

Ocean College, Agricultural University of Hebei, Qinhuangdao, China.

出版信息

Microbiol Spectr. 2021 Dec 22;9(3):e0147021. doi: 10.1128/Spectrum.01470-21. Epub 2021 Dec 15.

Abstract

Evidence increasingly suggests planktonic fungi (or mycoplankton) play an important role in marine food webs and biogeochemical cycles. In order to better understand their ecological role and how oceanographic gradients from the coastal to open ocean shape the mycoplankton community, molecular approaches were used to study fungal dynamics along a repeatedly sampled, five-station transect beginning at the mouth of an estuary and continuing 87 km across the continental shelf to the oligotrophic waters at the boundary of the Sargasso Sea. Similar to patterns in chlorophyll , fungal 18S rRNA gene abundance showed a sharp decrease from nearshore to offshore stations. While Shannon's diversity was not statistically different across the transect, nonmetric multidimensional scaling (NMDS) ordination revealed that fungal communities at the nearshore station were significantly different from those at other stations. Even though spatial gradients were consistently strong, the shelf mycoplankton were more similar to those of the offshore communities when temperature was high (>20°C) and while they shifted toward the nearshore communities when temperature was low (<19°C), suggesting a role for additional seasonal factors (such as temperature) in shaping mycoplankton distributions. However, overall phylotype distributions were patchy with few taxa observed at all stations and the majority observed at a single station with the nearshore station exhibiting the largest number of exclusive phylotypes. Overall, our findings revealed the patchy spatial distributions and distinct niche partitioning of mycoplankton populations across a nearshore to open ocean gradient, which improved our understanding of fungal ecology in coastal waters. Fungi are an important, but understudied, group of heterotrophic microbes in marine environments. Traditionally, fungi in the coastal ocean were largely assumed to be derived from terrestrial inputs. Yet here we find many fungal taxa are endemic to the open ocean environment but are rare or absent in nearshore waters, suggesting they are not washed into the ocean from the land. As observed for the bacterioplankton, coastal oceanographic gradients can function as habitat barriers to partition fungal communities. Compared to the bacterioplankton, however, the mycoplankton exhibit a much patchier distribution pattern, suggesting differential drivers and the potential for spatially/temporally limited habitats or strong density-dependent selection. Therefore, our results show that mycoplankton in the coastal ocean may play a significant but complementary role to that of the bacterioplankton.

摘要

越来越多的证据表明浮游真菌(或微真菌)在海洋食物网和生物地球化学循环中发挥着重要作用。为了更好地了解它们的生态作用以及从沿海到开阔海域的海洋梯度如何塑造微真菌群落,本研究采用分子方法沿着一条重复采样的五站剖面进行研究,该剖面始于河口,并穿过大陆架 87 公里到达马尾藻海边界的贫营养水域。与叶绿素模式相似,真菌 18S rRNA 基因丰度从近岸站到近海站急剧下降。虽然整个剖面的香农多样性没有统计学差异,但非度量多维尺度(NMDS)排序显示近岸站的真菌群落与其他站的真菌群落有显著差异。尽管空间梯度一直很强,但当温度较高(>20°C)时,陆架微真菌与近海群落更为相似,而当温度较低(<19°C)时,它们则向近岸群落转移,表明温度等季节性因素在塑造微真菌分布方面发挥了作用。然而,总体而言,系统发育型分布不均匀,很少有分类单元在所有站点都被观察到,而大多数则在单个站点被观察到,其中近岸站表现出最大数量的特有系统发育型。总的来说,本研究结果揭示了陆架到开阔海域梯度上微真菌种群的斑块状空间分布和明显的生态位分化,这提高了我们对沿海海域真菌生态学的认识。真菌是海洋环境中重要但研究较少的异养微生物群。传统上,沿海海洋中的真菌主要被认为是来自陆地的输入。然而,我们在这里发现许多真菌类群是开放海洋环境的特有种,但在近岸水域中却很少或不存在,这表明它们不是从陆地冲刷到海洋中的。与细菌浮游生物一样,沿海海洋的地理梯度可以作为分隔真菌群落的栖息地障碍。然而,与细菌浮游生物相比,微真菌的分布模式更加斑块化,这表明存在不同的驱动因素,以及潜在的空间/时间受限的栖息地或强烈的密度依赖选择。因此,我们的结果表明,沿海海洋中的微真菌可能发挥着与细菌浮游生物相似但互补的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ed2/8672894/e00218a32879/spectrum.01470-21-f001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验